Literature DB >> 24211926

Mucoadhesive polymer films for tissue retraction in laparoscopic surgery: Ex-vivo study on their mechanical properties.

Zhigang Wang1, Lik-Ren Tai, Donald McLean, Emma J Wright, Gordon J Florence, Stuart I Brown, Pascal Andre, Alfred Cuschieri.   

Abstract

Safe and effective manipulation of soft tissue during laparoscopic procedures can be achieved by the use of mucoadhesive polymer films. A series of novel adhesive polymer films were formulated in house based on either Carbopol or Chitosan modified systems. The mechanical properties of the polymers and their adherence to bowel were evaluated using ex-vivo pig bowel immersed in 37°C water bath and connected to an Instron tensiometer. Young's modulus was 300 kPa for the Carbopol-polymer and 5 kPa for the Chitosan-polymer. The Chitosan-polymer exhibited much larger shear adhesion than its tensile adhesion: 3.4 N vs. 1.2. Both tensile and shear adhesions contributed to the large retraction force (2.6 N) obtained during l polymer-bowel retraction testing. Work of adhesion at the polymer/serosa interface, defined as the area under the force curve, was 64 mJ, which is appreciably larger than that reported with existing polymers. In conclusion, adhesive polymers can stick to the serosal side of the bowel with an adhesive force, which is sufficient to lift the bowel, providing a lower retraction stress than that caused by laparoscopic grasping which induces high localized pressures on the tissue.

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Keywords:  adhesive force; bowel retraction; laparoscopic surgery; mechanical property; mucoadhesive polymer

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Year:  2014        PMID: 24211926     DOI: 10.3233/BME-130829

Source DB:  PubMed          Journal:  Biomed Mater Eng        ISSN: 0959-2989            Impact factor:   1.300


  1 in total

1.  Liver retraction system by C3-muco-adhesive polymer films for laparoscopic surgery.

Authors:  Saud Aldeghaither; Benjie Tang; Afshin Alijani; Donald McLean; Emma Wright; Zhigang Wang; Iain Tait; Alfred Cuschieri
Journal:  Surg Endosc       Date:  2015-10-21       Impact factor: 4.584

  1 in total

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